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A 3-D Propagation Model for Emerging Land Mobile Radio Cellular Environments

机译:新兴陆地移动无线蜂窝环境的3D传播模型

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摘要

A tunable stochastic geometry based Three-Dimensional (3-D) scattering model for emerging land mobile radio cellular systems is proposed. Uniformly distributed scattering objects are assumed around the Mobile Station (MS) bounded within an ellipsoidal shaped Scattering Region (SR) hollowed with an elliptically-cylindric scattering free region in immediate vicinity of MS. To ensure the degree of expected accuracy, the proposed model is designed to be tunable (as required) with nine degrees of freedom, unlike its counterparts in the existing literature. The outer and inner boundaries of SR are designed as independently scalable along all the axes and rotatable in horizontal plane around their origin centered at MS. The elevated Base Station (BS) is considered outside the SR at a certain adjustable distance and height w.r.t. position of MS. Closed-form analytical expressions for joint and marginal Probability Density Functions (PDFs) of Angle-of-Arrival (AoA) and Time-of-Arrival (ToA) are derived for both up- and down-links. The obtained analytical results for angular and temporal statistics of the channel are presented along with a thorough analysis. The impact of various physical model parameters on angular and temporal characteristics of the channel is presented, which reveals the comprehensive insight on the proposed results. To evaluate the robustness of the proposed analytical model, a comparison with experimental datasets and simulation results is also presented. The obtained analytical results for PDF of AoA observed at BS are seen to fit a vast range of empirical datasets in the literature taken for various outdoor propagation environments. In order to establish the validity of the obtained analytical results for spatial and temporal characteristics of the channel, a comparison of the proposed analytical results with the simulation results is shown, which illustrates a good fit for 107 scattering points. Moreover, the proposed model is shown to degenerate to various notable geometric models in the literature by an appropriate choice of a few parameters.
机译:针对新兴的陆地移动无线蜂窝系统,提出了一种基于可调谐随机几何的三维(3-D)散射模型。假设均匀分布的散射物体围绕在以椭圆形散射区域(SR)包围的移动站(MS)周围,该椭圆形散射区域在MS的紧邻区域内被椭圆形的无散射散射区域所挖空。为了确保预期的准确度,与现有文献中的模型不同,所提出的模型被设计为具有9个自由度的可调参数(根据需要)。 SR的外边界和内边界设计为可沿所有轴独立缩放,并且可绕水平面以其原点为中心在水平面上旋转。高架基站(BS)被认为是在SR之外的某个可调距离和高度w.r.t. MS的位置。对于上行链路和下行链路,都得出了到达角(AoA)和到达时间(ToA)的联合和边际概率密度函数(PDF)的闭式分析表达式。给出了获得的通道角度和时间统计数据的分析结果,并进行了全面的分析。提出了各种物理模型参数对通道角度和时间特性的影响,从而揭示了对拟议结果的全面了解。为了评估所提出的分析模型的鲁棒性,还提出了与实验数据集和仿真结果的比较。在BS上观察到的AoA PDF的分析结果,可以适合各种户外传播环境的文献中的大量经验数据集。为了确定所获得的分析结果对通道的时空特性的有效性,将拟议的分析结果与仿真结果进行了比较,表明该分析结果非常适合10 7 散射点。此外,通过适当选择一些参数,可以证明所提出的模型退化为文献中各种著名的几何模型。

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